56 results on '"Lou, Xiaobing"'
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2. Progressive Self-Leveling Deposition Improves the Cyclability of Anode-less Sodium Metal Batteries Revealed by In Situ EPR Imaging
3. Unexpected temperature dependence of 1H paramagnetic shift in MAS NMR of nickelocene
4. Self-assembled microflower-like NiCo2X4 (X = O, S, Se) as electrodes for asymmetric supercapacitors
5. Correction: Multi-angle tracking synthetic kinetics of phase evolution in Li-rich Mn-based cathodes
6. Multi-Angle Tracking Synthetic Kinetics of Phase Evolution in Li-Rich Mn-Based Cathodes
7. Interfacial Deterioration in Highly Fluorinated Cation-Disordered Rock-Salt Cathode: Carbonate-Based Electrolyte vs. Ether-Based Electrolyte
8. The influence of Li deficiency: An overlooked factor that determines the anion redox reversibility of Mn-based layered oxide cathodes
9. Controllable solvent treatment of fluorinated graphite for high power density and low cathode swelling lithium primary batteries
10. Self-Assembled Microflower-Like Nico2x4 (X = O, S, Se) as Electrodes for Asymmetric Supercapacitors
11. Berichtigung: Custom‐Made Ceria Nanoparticles Show a Neuroprotective Effect by Modulating Phenotypic Polarization of the Microglia
12. Corrigendum: Custom‐Made Ceria Nanoparticles Show a Neuroprotective Effect by Modulating Phenotypic Polarization of the Microglia
13. A green ligand-based copper–organic framework: a high-capacity lithium storage material and insight into its abnormal capacity-increase behavior
14. Self-assembled 3D NixCo3-xO4 pseudocube superstructure as potential anode material for Li-Ion batteries
15. A rings-in-pores net: crown ether-based covalent organic frameworks for phase-transfer catalysis
16. Reversible phase transition enabled by binary Ba and Ti-based surface modification for high voltage LiCoO2 cathode
17. A comprehensive study on the generation of reactive oxygen species in Cu-Aβ-catalyzed redox processes
18. Retarding Phase Transformation During Cycling in a Lithium‐ and Manganese‐Rich Cathode Material by Optimizing Synthesis Conditions
19. Unveiling the benefits of potassium doping on the structural integrity of Li–Mn-rich layered oxides during prolonged cycling by dual-mode EPR spectroscopy
20. Low-temperature pseudomorphic transformation of polyhedral MIL-88A to lithium ferrite (LiFe3O5) in aqueous LiOH medium toward high Li storage
21. Reversible High-Voltage N-Redox Chemistry in Metal–Organic Frameworks for High-Rate Anion-Intercalation Batteries
22. Unraveling the Redox Couples of VIII/VIV Mixed-Valent Na3V2(PO4)2O1.6F1.4 Cathode by Parallel-Mode EPR and In Situ/Ex Situ NMR
23. Mitigating voltage decay in high-capacity Li1.2Ni0.2Mn0.6O2 cathode material by surface K+ doping
24. Reduction of the 13C cross-polarization experimental time for pharmaceutical samples with long T1 by ball milling in solid-state NMR
25. Centrifugal Field Guided Dual Templating Synthesis of Functional Macro-Microporous Carbon
26. Carbon-coated Li3V2(PO4)3 derived from metal-organic framework as cathode for lithium-ion batteries with high stability
27. Custom‐Made Ceria Nanoparticles Show a Neuroprotective Effect by Modulating Phenotypic Polarization of the Microglia
28. Custom-Made Ceria Nanoparticles Show a Neuroprotective Effect by Modulating Phenotypic Polarization of the Microglia
29. Green and Rational Design of 3D Layer-by-Layer MnOx Hierarchically Mesoporous Microcuboids from MOF Templates for High-Rate and Long-Life Li-Ion Batteries
30. Exploring the Capacity Limit: A Layered Hexacarboxylate-Based Metal–Organic Framework for Advanced Lithium Storage
31. Bimetallic zeolite imidazolate framework for enhanced lithium storage boosted by the redox participation of nitrogen atoms
32. The effect of nitrogen and oxygen coordination: toward a stable anode for reversible lithium storage
33. High-energy nanostructured Na3V2(PO4)2O1.6F1.4 cathodes for sodium-ion batteries and a new insight into their redox chemistry
34. One-Pot Synthesis of Co-Based Coordination Polymer Nanowire for Li-Ion Batteries with Great Capacity and Stable Cycling Stability
35. Highly reversible lithium storage in cobalt 2,5-dioxido-1,4-benzenedicarboxylate metal-organic frameworks boosted by pseudocapacitance
36. Ultrathin Cobalt-Based Metal-Organic Framework Nanosheets with Both Metal and Ligand Redox Activities for Superior Lithium Storage
37. Remarkable improvement in the lithium storage property of Co2(OH)2BDC MOF by covalent stitching to graphene and the redox chemistry boosted by delocalized electron spins
38. Ultrathin Manganese-Based Metal–Organic Framework Nanosheets: Low-Cost and Energy-Dense Lithium Storage Anodes with the Coexistence of Metal and Ligand Redox Activities
39. Pillared-Layer Metal–Organic Frameworks for Improved Lithium-Ion Storage Performance
40. Mesoporous cobalt 2,5-thiophenedicarboxylic coordination polymer for high performance Na-ion batteries
41. Hierarchical CuO octahedra inherited from copper metal–organic frameworks: high-rate and high-capacity lithium-ion storage materials stimulated by pseudocapacitance
42. Room-temperature synthesis of a cobalt 2,3,5,6-tetrafluoroterephthalic coordination polymer with enhanced capacity and cycling stability for lithium batteries
43. Amorphization and disordering of metal–organic framework materials for rechargeable batteries by thermal treatment
44. Cobalt-based metal organic framework with superior lithium anodic performance
45. High Anodic Performance of Co 1,3,5-Benzenetricarboxylate Coordination Polymers for Li-Ion Battery
46. A thermally activated manganese 1,4-benzenedicarboxylate metal organic framework with high anodic capability for Li-ion batteries
47. The organic-moiety-dominated Li+ intercalation/deintercalation mechanism of a cobalt-based metal–organic framework
48. Reversible lithium storage in manganese and cobalt 1,2,4,5-benzenetetracarboxylate metal–organic framework with high capacity
49. A novel coordination polymer based on Co(ii) hexanuclear clusters with azide and carboxylate bridges: structure, magnetism and its application as a Li-ion battery anode
50. Capacity control of ferric coordination polymers by zinc nitrate for lithium-ion batteries
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